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姓    名: 夏正俊 性    别:
职    务:   职    称: 研究员
邮政编码: 150080 专家类别: 百人计划
电子邮件: xiazhj@iga.ac.cn
通讯地址: 黑龙江省哈尔滨市哈平路138号

 简历:
 

个人学习经历及工作经历:

1979.9. -- 1983.7. 扬州大学  植物保护专业,获农学学士学位。

1983.9. -- 1986.7. 中国农业大学,植物病理专业,               硕士

1986.8. -- 1997.4. 江苏省农科院从事专业:植保所植物病理学棉花病害室主任, 副研究员(自93.)

1997.5. -- 2000.5. 南非德班大学(现University of KwaZulu-Natal)微生物学,获理学博士学位

2000.5. -- 2001.6. 南非西开普大学 生物化学专业 博士后

2001.7. -- 2007.3. 日本千叶大学  特别研究员/教员 从事大豆分子生物学研究,主要建立大豆高密度连锁图谱,基因文库的创建、大豆生育期等重要性状基因的克隆                 

2007.4. -- 2010.03  日本农业生物资源研究所,  特别研究员,博士生导师, 大豆生育期等重要性状基因的克隆及功能分析

2010.4. -- 今 中国科学院东北地理与农业生态研究所 研究员,博士生导师 

 学历:
 
 研究领域:
 

大豆重要农艺性状基因的克隆、功能验证与分子设计育种。

先后成功地克隆出大豆控制开花与成熟期E1、E2和E3基因。特别是成功破译了E1基因,取得了突破性进展,为国际首创。E1基因位于着丝点附近,克隆难度大,且在拟南芥和水稻基因组中不存在近等同源序列,代表着大豆基因组中存在着独特的控制开花与成熟期基因体系。正在克隆大豆中新型控制生育期基因,重要研究大豆光周期调控网络。在PNAS等国内外重要期刊上发表论文文60多篇。

 社会任职:
 
 获奖及荣誉:
 

中国科学院王宽诚科研奖金

中国科学院东北地理与农业生态研究所论文奖励

多次应邀在PAG等国际学术大会上做学术报告

 代表论著:
 
1.Zhai H, Lu SX, Wu HY, Zhang YP, Zhang XZ, Yang JY, Wang YY, Yang G, Qiu HM, Cui TT, Xia ZJ. Diurnal Expression Pattern, Allelic Variation, and Association Analysis Reveal Functional Features of the E1 Gene in Control of Photoperiodic Flowering in Soybean. PLoS One. 2015 Aug 14;10(8):e0135909. doi: 10.1371/journal.pone.0135909. eCollection 2015.
2.Zhai H1,2, Ning W2, Wu H1, Zhang X1, Lü S1, Xia Z3. DNA-binding protein phosphatase AtDBP1 acts as a promoter of flowering in Arabidopsis. Planta. 2016 Mar;243(3):623-33. doi: 10.1007/s00425-015-2433-y. Epub 2015 Nov 19. 
3.Zhai Hong, Shixiang Lü, Yueqiang Wang, Xin Chen, Haixiang Ren, Jiayin Yang, Wen Cheng, Chunmei Zong, Heping Gu, Hongmei Qiu, Hongyan Wu, Xingzheng Zhang, Tingting Cui, Zhengjun Xia 2014 Allelic Variations at Four Major Maturity E Genes and Transcriptional Abundance of the E1 Gene Are Associated with Flowering Time and Maturity of Soybean Cultivars | PLOS ONE 10.1371/journal.pone.0097636
4.Zhai Hong, Shixiang Lü, Shuang Liang, Hongyan Wu, Xingzheng Zhang, Baohui Liu, Fanjiang Kong, Xiaohui Yuan, Jing Li, Zhengjun Xia 2014. GmFT4, a Homolog of FLOWERING LOCUS T, Is Positively Regulated by E1 and Functions as a Flowering Repressor in Soybean Research Article | published 19 Feb 2014 | PLOS ONE 10.1371/journal.pone.0089030
5.Tsubokura Yasutaka,Satoshi Watanabe,Zhengjun Xia,Hiroyuki Kanamori, Harumi Yamagata,Akito Kaga,Yuichi Katayose,Jun Abe,Masao Ishimoto, Kyuya Harada.Natural variation in the genes responsible for maturity loci E1, E2, E3and E4 in soybean. Annals of Botany Page 1 of 13available online at www.aob.oxfordjournals.org doi:10.1093/aob/mct269
6.Xia Zhengjun *, Hong Zhai, Shixiang Lü, HongyanWu, and Yupeng Zhang 2013 Recent Achievement in Gene Cloning and Functional. The Scientific World Journal. ID 281367 http://dx.doi.org/10.1155/2013/281367
7.Xia Zhengjun, Hongyan Wu, Satoshi Watanabe, Kyuya Harada,2013 Construction and targeted retrieval of specific clone from a non-gridded soybean bacterial artificial chromosome library. Analytical Biochemistry 444 (2014) 38–40
8.Xu Meilan, Zeheng Xu, Baohui Liu, Fanjiang Kong, Yasutaka Tsubokura, Satoshi Watanabe, Zhengjun Xia, Kyuya Harada, Akira Kanazawa, Testuya Yamada, and Jun Abe 2013 Genetic variation in four maturity genes affects photoperiod insensitivity and PHYA-regulated post-flowering responses of soybean. BMC Plant Biology. BMC Plant Biology 2013, 13:91
9.夏正俊 (2013)大豆光周期反应与生育期基因研究进展. 作物学报 39(4): 1-9
10.Xia ZJ,  Watanabe S, Yamada T, Tsubokura S, Nakashima H,  Zhai H, Anai H,  Sato S, Yamazaki T, Lǜ SX, Wu HY,  Tabata S, Harada K (2012) Positional cloning and characterization reveal the molecular basis for soybean maturity locus E1 that regulates photoperiodic flowering. Proc Natl Acad Sci USA 109 (32) E2155–E2164 (www.pnas.org/cgi/doi/10.1073/pnas.1117982109).
11.Xia ZJ, Zhai H, Liu BH, Kong FJ, Yuan XH, Hongyan Wu, Cober E, Harada K. Molecular identification of genes controlling flowering time, maturity, and photoperiod response in soybean. Plant Syst Evol (2012) 298:1217–1227
12.Watanabe S,  Xia ZJ, Hideshima R, Tsubokura Y, Sato S, Yamanaka N, Takahashi R, Anai T, Tabata S, Kitamura K  Harada K (2011) A Map-Based Cloning Strategy employing a Residual Heterozygous Line Reveals that the GIGANTEA Gene Is Involved in Soybean Maturity and Flowering. Genetics 188: 395-407
13.Harada K, Kaga A, Katayose Y, Tsubokura Y, Sato S, Watanabe S, Xia ZJ, et al. (2011) Genetic and molecular analysis of soybean genome. Proceeding of the 14th NIAS International Workshop on Genetic Resources. Edited by Tomooka N and Vaughan DA
14.Tsubokura Y, Hajika M, Kanamori H, XIA ZJ, Watanabe S, Kaga A, Katayose Y, Ishimoto M, Harada K (2012) The β-conglycinin deficiency in wild soybean is associated with the tail-to-tail inverted repeat of the α-subunit genes. Plant Mol Biol 78: 301-309.
15.XIA ZJ*, Wu HY and Achar PN* (2011) Infection and ultrastructure of conidia and pycnidia of Stenocarpella maydis in maize. J. Food Prot. 74(4):676–680. (通讯作者)
16.Harada K, Watanabe S, XIA ZJ, Tsubokura Y, Yamanaka N and Anai T (2011) Positional Cloning of the Responsible Genes for Maturity Loci E1, E2 and E3 in Soybean. In. Soybean - Genetics and Novel Techniques for Yield Enhancement. Edit by Dora Krezhova. InTech, pp51-76 http://www.intechopen.com/articles/show/title/positional-cloning-of-the-responsible-genes-for-maturity-loci-e1-e2-and-e3-in-soybean
17.Kong FJ, Liu BH, Xia ZJ, Sato S, Kim BM, Watanabe S, Yamada T, Tabata S, Kanazawa A, Harada K, Abe J. et al. (2010) Two coordinately regulated homologues of Flowering Time Locus T are involved in the control of photoperiodic flowering in soybean. Plant Physiology 154(3):1220-31.
18.Liu B, Watanabe S, Uchiyama T, Kong F, Kanazawa A, Xia ZJ, Nagamatsu A, Arai M, Yamada T, Kitamura K, Masuta C, Harada K, Abe J. (2010) Soybean stem growth habit gene Dt1 is an orthologue of Arabidopsis TFL1. Plant Physiol. 153:198-210.
19.Xia ZJ, Watanabe, S, Chen, Q S,, Sato, S, Harada, K. (2009). A novel manual pooling system for preparing three-dimensional pools of a deep coverage soybean bacterial artificial chromosome library. Molecular Ecology Resources 9(2):516-524.
20.Watanabe S, Hideshima R, Xia ZJ, Tsubokura Y, Sato S, Nakamoto Y, Yamanaka N, Takahashi R, Ishimoto M, Anai T, Tabata S, Harada K. (2009) Map-based Cloning of the Gene Associated With Soybean Maturity Locus E3. Genetics 182: 1251-1262. 
21.Xia ZJ, Tsubokura Y, Hoshi M, Hanawa M, Yano C, Okamura K, Ahmed TA, Anai T, Watanabe S, Hayashi M, Kawai T, Hossain KG, Masaki H, Asai K, Yamanaka N, Kubo N, Kadowaki K, Nagamura Y, Yano M, Sasaki T, Harada K. (2007) An integrated high-density linkage map of soybean with RFLP, SSR, STS, and AFLP markers using a single F2 population. DNA Res. 14(6): 257-69. 
22.Sayama T, Hwang TY, Yamazaki H, Yamaguchi N, Komatsu K, Takahashi M, Suzuki C, Miyoshi T, Tanaka Y, Xia ZJ, Tsubokura Y, Watanabe S, Harada K, Funatsuki H, Ishimoto M (2010) Mapping and comparison of quantitative trait loci for soybean branching phenotype in two locations. Breeding Science 60: 380–389  
23.Hwang TY, Sayama T, Takahashi M, Takada Y, Nakamoto Y, Funatsuki H, Hisano H, Sasamoto S, Sato S, Tabata S, Kono I, Hoshi M, Hanawa M, Yano C, Xia ZJ, Harada K, Kitamura K, Ishimoto M. (2009). High-density Integrated Linkage Map Based on SSR Markers in Soybean. DNA Res. 16: 213-225
24.Tsubokura Y, Onda R, Sato S, Xia ZJ, Hayashi M, Fukushima Y, Tabata S Harada K (2008). Characterization of soybean genome based on synteny analysis with Lotus japonicus. Breeding Sci. 58:157-167
25.Ferdous SA, Watanabe S, Suzuki-Orihara C, Tanaka Y, Kamiya M, Xia ZJ, Yamanaka N, Harada K (2006) Conversion of AFLP Markers Surrounding a QTL, rhg-t1, for Soybean Cyst Nematode Resistance into PCR-based Markers. Breeding Sci.e 56: 195-199.
26.Xia ZJ, Sato S, Watanabe S, Yamanaka N, Kawasaki S, Harada K (2005) Construction and characterization of a BAC library of soybean. Euphytica 141:129-137.
27.Harada K, Xia ZJ (2004) Soybean genomics: efforts to reveal the complex genome. Breeding Science 54: 215-224.
28.Xia ZJ, Achar PN (2001)  RAPD and PCR markers for the differentiation and detection of Stenocarpella maydis in maize seeds. J. of Phytopathology 149: 35-44.
29.Xia Zhengjun and P. N. Achar. 1999. Biochemical changes in cotton infected with Verticillium dahliae Kleb. African Plant Protection 5: 59-63.
30.Xia ZJ, Achar PN, Gu BK. (1998) Vegetative Compatibility Groupings of Verticillium dahliae Kleb from cotton and eggplant in Mainland China. European J. of Plant Pathology 104: 871-876.
31.大豆极早熟品种60Co γ射线突变体库的建立及突变表型的鉴定,大豆科学 2014年33(6)820-825 吴春雷 吴红艳 翟红 柏锡 夏正俊

专著 大豆品质生物学与遗传改良 王绍东 夏正俊 科学出出版社, 2014年,44万字,发行量5000


 
 承担科研项目情况:
 
中国科学院战略性先导科技专项(A 类): 光周期调控大豆生育期核心分子模块解析
国家基金委面上项目:大豆生育期基因E1的作用机理研究
国家基金委面上项目:大豆中枢生育期基因耦合光周期的分子机理